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Biochemical responses of common bean to white mold potentiated by phosphites

机译:磷酸盐增强的普通豆的生化反应

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Considering that the mechanisms for phosphite-afforded disease control remain elusive, this study investigated whether zinc (Zn) and copper (Cu) phosphites could possible potentiate common bean resistance to white mold, caused by Sclerotinia sclerotiorum, through the stimulation of biochemical defence responses. Lesion area and disease severity were decreased by phosphites spray, but Zn phosphite outcompeted Cu phosphite. Histopathological observations revealed fewer fungal hyphae and less collapse of the mesophyll cells in the Zn and Cu phosphite-sprayed plants compared to water-sprayed ones. The S. sclerotiorum-triggered accumulation of reactive oxygen species, oxalic acid (a fungal secreted toxin) and malondialdehyde (an indicator of cellular damage) were constrained as a result of Zn and Cu phosphites spray. Activities of antioxidant enzymes (superoxide dismutase, peroxidase, ascorbate peroxidase and glutathione-S-transferase at 12 h after inoculation (hai) and catalase at 60 and 84 hai) were higher for Zn and Cu phosphites-sprayed plants than for water-sprayed ones. Activities of defence-related enzymes chitinase (CHI) at 12 hai, beta-1,3-glucanase (GLU) and poly-phenoloxidase (PPO) were higher at 12-84 hai for Zn, and Cu phosphites sprayed plants, phenylalanine ammonia-lyase at 36-84 hai for the Zn phosphite sprayed ones, CHI at 12-36 hai, GLU at 12-60 hai, PPO at 36 hai and PAL and lipoxygenase at 12 hai for the Cu phosphite sprayed ones upon inoculation with S. sclerotiorum relative to their water-sprayed counterparts. Concentrations of total soluble phenols and lignin-thioglycolic acid derivatives were not affected by Cu phosphite spray on infected plants but were higher and lower, respectively, for Zn phosphite sprayed plants at 60 hai compared to water-sprayed ones. Taken together, the findings from the present study shed light on the biochemical defence mechanisms involved in the Zn and Cu phosphites-mediated suppression of white mold in common bean.
机译:考虑到亚磷酸盐提供的疾病控制的机制仍然难以捉摸,本研究研究了锌(Zn)和铜(Cu)磷酸酯是否可以通过刺激生化防御反应来调查锌(Zn)和铜(Cu)磷酸酯对白色模具引起的白色模具的抗性。通过磷酸盐喷雾降低病变区和疾病严重程度,但Zn亚磷酸酯耐磷矿。组织病理学观察揭示了较少的真菌菌丝和Zn和Cu亚磷酸盐喷涂植物中叶肉细胞的崩溃较小,与喷水物相比。由于Zn和Cu磷酸酯喷雾,对反应性氧物质,草酸(真菌分泌的毒素)和丙二醛(细胞损伤指示剂)的S.Sclerotiorum触发的积累受到约束。在接种(HAI)和60和84 Hai的过氧化铝后12小时后(超氧化物歧化酶,过氧化物酶,抗坏血液过氧化物酶和谷胱甘肽-S-转移酶的活性对于Zn和Cu磷酸盐喷涂植物,较高,磷酸盐喷雾植物较高。在12〜84海HAI,Zn的12-84海,磷酸盐磷酸盐喷洒植物,苯丙氨酸氨 - Lyase在36-84 Hai的Zn磷酸盐喷涂,志在12-36 Hai,Glu在12-60 Hai,PPO在36个Hai和PAL和Lipoxygenase,在12 Hai,用于Cu磷酸盐喷洒的Cu磷酸盐菌相对于他们的喷水对应物。总可溶性酚和木质素 - 硫代醇酸衍生物的浓度不受Cu磷酸盐喷雾在感染植物上的影响,但与喷水剂的60 hai分别为Zn亚磷酸盐喷洒植物的较高且较低。在一起,目前研究中的研究结果揭示了Zn和Cu磷矿中涉及的生化防御机制介导的常见豆中白色模具的抑制。

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